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首页> 外文期刊>Journal of vibration and control: JVC >Suppressing the nonlinear vibrations of a compressor blade via a nonlinear saturation controller
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Suppressing the nonlinear vibrations of a compressor blade via a nonlinear saturation controller

机译:通过非线性饱和控制器抑制压缩机叶片的非线性振动

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A nonlinear saturation controller (NSC) is applied in this work to reduce the oscillations of a rotating blade dynamical system running at unsteady rotating speed. The controller is coupled quadratically to the main system by designing its natural frequency to be one half of the main system natural frequency. This is done to setup an energy bridge between them to make use of saturation phenomenon. That phenomenon is advantageous when the excitation force increases; the whole energy in the main system is channeled to the controller. The two system modes of vibrations are found to be linearly coupled powerfully, so the controller is applied only to the first mode and, consequently, the second mode tracks it. The multiple scales perturbation technique (MSPT) is adopted to derive the steady state equations that describe the modulations of amplitudes and phases of the system before and after control. Then, a stability analysis is achieved via Lyapunov's indirect method to determine the stable and unstable solutions depending on the real parts of the Jacobian matrix eigenvalues. Time history and different response curves of the controlled system are included for showing the controller effect. Eventually, validation curves and comparison with previously published work are included.
机译:在该工作中应用非线性饱和控制器(NSC),以减小以不稳定的旋转速度运行的旋转刀片动态系统的振荡。通过将其天然频率设计为主要系统自然频率的一半,将控制器二次地耦合到主系统。这样做是为了建立它们之间的能量桥来利用饱和现象。当激发力增加时,这种现象是有利的;主系统中的整个能量被引导到控制器。发现两个系统的振动模式有力地线性耦合,因此控制器仅应用于第一模式,并且因此,第二模式跟踪它。采用多种刻度扰动技术(MSPT)来导出描述在控制前后系统的幅度和阶段的调制的稳态方程。然后,通过Lyapunov的间接方法实现稳定性分析,以确定根据雅各族基质矩阵特征值的真实部位的稳定和不稳定的解决方案。包括控制系统的时间历史和不同响应曲线,用于显示控制器效果。最终,包括与先前发布的工作的验证曲线和比较。

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